LAPSE:2023.24698
Published Article

LAPSE:2023.24698
A Study on Lap Joint Welding of Thin Plate ASTM F1684 Using Fiber Laser Welding
March 28, 2023
Abstract
The International Maritime Organization (IMO) has developed stricter regulations on emission standards for sulfur oxides, etc., and the demand for Liquefied Natural Gas (LNG) is increasing as an alternative to satisfy these standards. This study relates to fiber laser welding, an approach which offers high-speed welding and low welding deformation for ASTM F1684, which has a low coefficient of thermal expansion (CTE) even in a cryogenic environment. In this study, through three preliminary experiments using 0.25 mm thick Invar, the conditions required to secure sufficient penetration depth and back bead were identified. Through the cross-sectional observation analysis, the welding conditions without defects were identified and the trend of penetration shape according to increasing welding speed was identified. Following a lap joint laser welding experiment under the secured conditions, the mechanical properties were evaluated through the shear strength test and the heat influence range of a fiber laser was identified through the temperature measurement of a welding part. As a result, it was confirmed that the shear strength of the lap joint laser welding part was 86.8% that of the base metal.
The International Maritime Organization (IMO) has developed stricter regulations on emission standards for sulfur oxides, etc., and the demand for Liquefied Natural Gas (LNG) is increasing as an alternative to satisfy these standards. This study relates to fiber laser welding, an approach which offers high-speed welding and low welding deformation for ASTM F1684, which has a low coefficient of thermal expansion (CTE) even in a cryogenic environment. In this study, through three preliminary experiments using 0.25 mm thick Invar, the conditions required to secure sufficient penetration depth and back bead were identified. Through the cross-sectional observation analysis, the welding conditions without defects were identified and the trend of penetration shape according to increasing welding speed was identified. Following a lap joint laser welding experiment under the secured conditions, the mechanical properties were evaluated through the shear strength test and the heat influence range of a fiber laser was identified through the temperature measurement of a welding part. As a result, it was confirmed that the shear strength of the lap joint laser welding part was 86.8% that of the base metal.
Record ID
Keywords
ASTM F1684, fiber laser welding, lap joint welding, tensile strength
Subject
Suggested Citation
Kim J, Kim Y, Kim J, Kim Y, Kim D, Kang S, Pyo C. A Study on Lap Joint Welding of Thin Plate ASTM F1684 Using Fiber Laser Welding. (2023). LAPSE:2023.24698
Author Affiliations
Kim J: Smart Mobility Materials and Components R&D Group, Korea Institute of Industrial Technology, Gwangju 61012, Korea
Kim Y: Smart Mobility Materials and Components R&D Group, Korea Institute of Industrial Technology, Gwangju 61012, Korea
Kim J: Smart Mobility Materials and Components R&D Group, Korea Institute of Industrial Technology, Gwangju 61012, Korea
Kim Y: Cargo Containment System Research Dep’t, Hyundai Heavy Industries, Seoul 03058, Korea
Kim D: Cargo Containment System Research Dep’t, Hyundai Heavy Industries, Seoul 03058, Korea
Kang S: Transport Machine Components R&D Group, Korea Institute of Industrial Technology, Jinju-si 52845, Korea [ORCID]
Pyo C: Smart Mobility Materials and Components R&D Group, Korea Institute of Industrial Technology, Gwangju 61012, Korea [ORCID]
Kim Y: Smart Mobility Materials and Components R&D Group, Korea Institute of Industrial Technology, Gwangju 61012, Korea
Kim J: Smart Mobility Materials and Components R&D Group, Korea Institute of Industrial Technology, Gwangju 61012, Korea
Kim Y: Cargo Containment System Research Dep’t, Hyundai Heavy Industries, Seoul 03058, Korea
Kim D: Cargo Containment System Research Dep’t, Hyundai Heavy Industries, Seoul 03058, Korea
Kang S: Transport Machine Components R&D Group, Korea Institute of Industrial Technology, Jinju-si 52845, Korea [ORCID]
Pyo C: Smart Mobility Materials and Components R&D Group, Korea Institute of Industrial Technology, Gwangju 61012, Korea [ORCID]
Journal Name
Processes
Volume
9
Issue
3
First Page
428
Year
2021
Publication Date
2021-02-27
ISSN
2227-9717
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Original Submission
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PII: pr9030428, Publication Type: Journal Article
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LAPSE:2023.24698
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https://doi.org/10.3390/pr9030428
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Mar 28, 2023
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